首页> 外文期刊>The Science of the Total Environment >Performance evaluation of two trickling filters removing LAS and caffeine from wastewater: Light reactor (algal-bacterial consortium) vs dark reactor (bacterial consortium)
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Performance evaluation of two trickling filters removing LAS and caffeine from wastewater: Light reactor (algal-bacterial consortium) vs dark reactor (bacterial consortium)

机译:两种滴滤滤池去除废水中的LAS和咖啡因的性能评估:轻型反应器(藻菌联盟)与深色反应器(细菌财团)

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摘要

Micropollutant removal efficiencies of two trickling filters - operated under light and dark conditions were studied and compared. Linear alkylbenzene sulphonate (LAS) and caffeine were selected as model micropollutants. Both lab-scale trickling-fil ter type reactors were packed with polyurethane foam sponge cubes (2 cm × 2 cm × 2 cm) with 40% occupancy. The trickling filter with the white color LED light was named as Light Reactor (LR), which was operated under light: dark cycle of 12:12 h with a quantum flux of 15 μmoles/m~2/s. No light was provided in the other trickling filter, named Dark Reactor (DR). Synthetic wastewater containing glucose (250 mg/L), LAS (12 mg/L), and caffeine (0.05 mg/L) was fed to the reactors at a hydraulic retention time (HRT) of 12- and 8-h at 25 ℃ for 2 months. The C, N, and P removal at 12-h HRT were 85%, 15%, and 49%, respectively, in LR, the corresponding values in DR were 88%, 18%, and 43%. Similarly, at 8-h HRT 90%, 24%, and 37% was observed in LR and 84%, 19%, and 37% in DR. However, the LAS and caffeine removal decreased from 99 to 96% and 96 to 86% respectively in LR, and from 96 to 79% in DR with decreasing the HRT from 12 to 8-h. The number of LAS de-graders in LR (5.5 × 10~4 CFU/sponge cube) was higher compared to DR (2.2 × 10~4 CFU/sponge cube) at 8-h HRT. The above results indicate that algal-bacterial symbiotic relationship in LR was beneficial for carbon and micropollutants removal from domestic wastewater.
机译:研究并比较了两种滴滤滤池的微污染物去除效率-在明暗条件下运行。选择线性烷基苯磺酸盐(LAS)和咖啡因作为模型微污染物。两个实验室规模的滴滤式反应器均装有40%的聚氨酯泡沫海绵块(2厘米×2厘米×2厘米)。具有白色LED灯的滴滤滤光片被称为光反应器(LR),它在光:暗周期为12:12 h且量子通量为15μmoles/ m〜2 / s的条件下工作。另一个滴滤滤光片名为Dark Reactor(DR)中没有光。将含有葡萄糖(250 mg / L),LAS(12 mg / L)和咖啡因(0.05 mg / L)的合成废水在25℃的水力停留时间(HRT)分别为12和8小时的条件下送入反应器2个月。在LR中,在12小时HRT的C,N和P去除率分别为85%,15%和49%,DR中的相应值分别为88%,18%和43%。同样,在8小时的HRT中,LR观察到90%,24%和37%,DR观察到84%,19%和37%。但是,随着HRT从12小时减少到8小时,LR中的LAS和咖啡因去除率分别从99%降低到96%和96%到86%,而DR则从96%降低到79%。在8小时的HRT下,LR中的LAS降解物数量(5.5×10〜4 CFU /海绵块)比DR(2.2×10〜4 CFU /海绵块)高。以上结果表明,LR中藻类与细菌的共生关系有利于去除生活污水中的碳和微污染物。

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